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    • 2. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US06587163B1
    • 2003-07-01
    • US09597574
    • 2000-06-20
    • Takanori NakayamaHikaru ItoKimitoshi OogiichiKuniyuki Matsunaga
    • Takanori NakayamaHikaru ItoKimitoshi OogiichiKuniyuki Matsunaga
    • G02F11343
    • G02F1/133707G02F1/136213
    • A liquid crystal display device, or more particularly, an active matrix type liquid crystal display device having a pixel electrode formed in a pixel field defined on one of two transparent substrates opposed to each other with a liquid crystal layer between them. The pixel electrode is overlapped a signal line, which is formed in a portion of the one transparent substrate coincident with a black matrix, with a dielectric between them. The width of the overlap is set to a value satisfying a condition that an electric field induced between the signal line and pixel electrode will not invade into the pixel field defined with the black matrix. Owing to the structure, inhomogeneous luminance caused by a source electrode of a thin film transistor can be avoided. Moreover, inhomogeneous luminance caused by a capacitive element can be avoided.
    • 一种液晶显示装置,或者更具体地说,是一种有源矩阵型液晶显示装置,其具有形成在彼此相对的两个透明基板中的一个上的像素场中的像素电极,在它们之间具有液晶层。 像素电极与形成在与黑矩阵一致的一个透明基板的一部分中的信号线重叠,在它们之间具有电介质。 重叠的宽度被设定为满足在信号线和像素电极之间感应的电场不会侵入由黑矩阵限定的像素场的条件的值。 由于该结构,可以避免由薄膜晶体管的源电极引起的不均匀的亮度。 此外,可以避免由电容元件引起的不均匀的亮度。
    • 6. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US07714969B2
    • 2010-05-11
    • US12169663
    • 2008-07-09
    • Toshiki AsakuraMasato ShimuraMakiko ImabayashiTakanori Nakayama
    • Toshiki AsakuraMasato ShimuraMakiko ImabayashiTakanori Nakayama
    • G02F1/1343
    • G02F1/134363G02F2001/134372
    • In a liquid crystal display device having a first planar electrode and a second electrode formed on the first electrode with an insulating film in between, the response time of a liquid crystal is made shorter than that in a related art.A liquid crystal display device includes: a first substrate having a first electrode, an insulating film provided in an upper layer than the first electrode, and a second electrode provided in an upper layer than the insulating film; a second substrate; and a liquid crystal sandwiched between the first substrate and the second substrate. The liquid crystal display device drives the liquid crystal by generating an electric field by the first electrode and the second electrode. The second electrode has plural slits closed at both ends, the first electrode is a planar electrode superimposed on the plural slits, and, given that the length of the respective slits is Ls, the length Ls of the respective slits satisfies 12 μm≦Ls≦30 μm, more preferably, 12μm≦Ls≦20 μm.
    • 在具有第一平面电极和在第一电极上形成有绝缘膜的第二电极的液晶显示装置中,液晶的响应时间比现有技术更短。 液晶显示装置包括:第一基板,具有第一电极,设置在比第一电极上的上层的绝缘膜;以及设置在比绝缘膜上的上层的第二电极; 第二基板; 以及夹在第一基板和第二基板之间的液晶。 液晶显示装置通过由第一电极和第二电极产生电场来驱动液晶。 第二电极具有在两端封闭的多个狭缝,第一电极是叠加在多个狭缝上的平面电极,并且由于各个狭缝的长度为Ls,各个狭缝的长度Ls满足12μm< llE; Ls≦̸ 30μm,更优选为12μm< Ls& Ll;20μm。
    • 10. 发明授权
    • Display device
    • 显示设备
    • US07821609B2
    • 2010-10-26
    • US11713623
    • 2007-03-05
    • Ryouichi OotsuTakanori NakayamaTakahiro Miyazaki
    • Ryouichi OotsuTakanori NakayamaTakahiro Miyazaki
    • G02F1/1343
    • G02F1/134363G02F2001/136263
    • In a liquid crystal display device, each pixel region formed over a liquid crystal side of one substrate out of respective substrates which are arranged to face each other with liquid crystal therebetween includes pixel electrodes to which a video signal is supplied from a drain signal line through a switching element driven in response to a scanning signal from a gate signal line and capacitive elements which are formed between the pixel electrodes and a capacitive signal line by way of a dielectric film. In such a constitution, the pixel region is divided into a plurality of regions, and video signals are supplied to respective pixel electrodes and capacitive elements in respective regions through paths which are branched from the switching element.
    • 在液晶显示装置中,在各个基板之间形成的液晶侧的各像素区域之间设置有液晶相对的各个基板,包括:从漏极信号线向视频信号提供视频信号的像素电极 响应于来自栅极信号线的扫描信号而驱动的开关元件和通过电介质膜形成在像素电极和电容信号线之间的电容元件。 在这种结构中,像素区域被划分为多个区域,并且通过从开关元件分支的路径将视频信号提供给各个区域中的各个像素电极和电容元件。